The future potential of ASL MRI is seen not only in replacing contrast agents for perfusion assessment but also in providing additional information to the MRI exam, such as BBB integrity or the architecture of the vascular feeders.
Abstract
Perfusion MRI plays an important role in brain tumor assessment, especially for tumor grading and differentiation of tumor progression from pseudoprogression. Arterial spin labeling (ASL) MRI is a non-invasive method for measuring cerebral blood flow (CBF) using blood water as an endogenous tracer, which has great clinical potential for brain tumor imaging and might help to lower the use of gadolinium-based contrast agents. In this review, we discuss recent advances of the ASL method with a special focus on brain tumors, including multi-time point ASL which not only allows more accurate CBF quantification, but also yields arterial transit time (ATT) maps. Another method to reduce dependency on ATT is velocity-selective ASL, for which labeling is directly performed in the imaging volume. By performing a physiological challenge, like a hypercapnia breathing challenge, the reactivity of the tumor's neovasculature can be determined. More recent advances in ASL allow probing the blood-brain barrier (BBB) integrity by measuring the rate of water transport across the BBB (BBB-ASL). By labeling only a single artery, selective ASL sequences can help to identify what part of the tumor is fed by which artery. In conclusion, we see the future potential of ASL MRI not only in replacing contrast agents for perfusion assessment but also in providing additional information to the MRI exam, such as BBB integrity or the architecture of the vascular feeders.
Background/Objectives: Dynamic contrast-enhanced MRI (DCE-MRI) is emerging as a key technique in neuro-oncologic imaging by enabling quantitative assessment of vascular permeability and blood–brain barrier integrity, two central features of tumor progression and treatment-related tissue injury. Its clinical relevance i...
F. Bozzetti, A. Ramos González, A. Leonetti et al.· Brain Science· 0 citations
An overview of DGE MRI and its potential applications in brain tumor imaging is provided, including the physical principles underlying the contrast mechanisms and current acquisition strategies and post-processing approaches, including quantification and kinetic modeling.
Anina Seidemo, Xiang Xu, R. Wirestam et al.· MAGMA· 0 citations
Arterial spin labelling (ASL) is one of the new cerebral perfusion magnetic resonance imaging (MRI) studies that provides useful information about the intracranial lesional perfusion through the measurement of cerebral blood flow (CBF). Tumours and tumour-like lesions are associated with alterations in the CBF. The ide...
M. S. Ayyad, N. El-Toukhy, Mostafa Shahein et al.· The Egyptian Journal of Neur...· 0 citations
Diffusion-weighted imaging (DWI) is a fundamental non-contrast sequence in multiparametric breast magnetic resonance imaging (MRI), measuring water diffusion to assess tissue microstructure. The derived apparent diffusion coefficient (ADC) effectively discriminates between malignant lesions, which typically exhibit low...
Yong Ye, Wen-Wen Shao, Ying Yang· Diagnostic and Interventiona...· 0 citations
PURPOSE
Pseudo-continuous arterial spin labeling (pCASL) MRI is a widely used, noninvasive, contrast-agent-free technique for measuring cerebral blood flow (CBF) and assessing vascular dysfunction across diverse clinical settings and murine disease models. In practice, arterial-transit artifacts that generate hyperinte...
Xiuli Yang, Yuguo Li, Adnan Bibic et al.· Magnetic Resonance in Medica...· 0 citations
INTRODUCTION
Glioblastoma is an aggressive brain tumor with poor survival rates and nearly universal recurrence. Magnetic resonance (MR) imaging obtained after radiation and chemotherapy treatment often shows "pseudoprogression" (PsP), or contrast enhancement that mimics tumor growth. However, this does not indicate ac...
H. Reecher, S. Duenweg, A. Lowman et al.· AJNR. American journal of ne...· 0 citations
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